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用于心率变异性信号采集与分析的无线光电容积脉搏波描记装置。

Wireless photoplethysmographic device for heart rate variability signal acquisition and analysis.

作者信息

Reyes Ivan, Nazeran Homer, Franco Mario, Haltiwanger Emily

机构信息

Electrical and Computer Engineering, University of Texas at El Paso, El Paso, TX 79968, USA.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2012;2012:2092-5. doi: 10.1109/EMBC.2012.6346372.

Abstract

The photoplethysmographic (PPG) signal has the potential to aid in the acquisition and analysis of heart rate variability (HRV) signal: a non-invasive quantitative marker of the autonomic nervous system that could be used to assess cardiac health and other physiologic conditions. A low-power wireless PPG device was custom-developed to monitor, acquire and analyze the arterial pulse in the finger. The system consisted of an optical sensor to detect arterial pulse as variations in reflected light intensity, signal conditioning circuitry to process the reflected light signal, a microcontroller to control PPG signal acquisition, digitization and wireless transmission, a receiver to collect the transmitted digital data and convert them back to their analog representations. A personal computer was used to further process the captured PPG signals and display them. A MATLAB program was then developed to capture the PPG data, detect the RR peaks, perform spectral analysis of the PPG data, and extract the HRV signal. A user-friendly graphical user interface (GUI) was developed in LabView to display the PPG data and their spectra. The performance of each module (sensing unit, signal conditioning, wireless transmission/reception units, and graphical user interface) was assessed individually and the device was then tested as a whole. Consequently, PPG data were obtained from five healthy individuals to test the utility of the wireless system. The device was able to reliably acquire the PPG signals from the volunteers. To validate the accuracy of the MATLAB codes, RR peak information from each subject was fed into Kubios software as a text file. Kubios was able to generate a report sheet with the time domain and frequency domain parameters of the acquired data. These features were then compared against those calculated by MATLAB. The preliminary results demonstrate that the prototype wireless device could be used to perform HRV signal acquisition and analysis.

摘要

光电容积脉搏波描记法(PPG)信号有潜力辅助心率变异性(HRV)信号的采集与分析:HRV是自主神经系统的一种非侵入性定量标志物,可用于评估心脏健康状况和其他生理状况。定制开发了一种低功耗无线PPG设备,用于监测、采集和分析手指处的动脉脉搏。该系统包括一个光学传感器,用于检测作为反射光强度变化的动脉脉搏;信号调理电路,用于处理反射光信号;一个微控制器,用于控制PPG信号的采集、数字化和无线传输;一个接收器,用于收集传输的数字数据并将其转换回模拟形式。使用个人计算机进一步处理捕获的PPG信号并进行显示。然后开发了一个MATLAB程序来捕获PPG数据、检测RR波峰、对PPG数据进行频谱分析并提取HRV信号。在LabView中开发了一个用户友好的图形用户界面(GUI)来显示PPG数据及其频谱。分别评估了每个模块(传感单元、信号调理、无线传输/接收单元和图形用户界面)的性能,然后对整个设备进行了测试。因此,从五名健康个体获取了PPG数据,以测试该无线系统的效用。该设备能够可靠地从志愿者身上采集PPG信号。为了验证MATLAB代码的准确性,将每个受试者的RR波峰信息作为文本文件输入到Kubios软件中。Kubios能够生成一份包含所采集数据的时域和频域参数的报告表。然后将这些特征与MATLAB计算的结果进行比较。初步结果表明,该原型无线设备可用于进行HRV信号的采集与分析。

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